18599365. CELL SEPARATION ELEMENT WITH SWELLING ADJUSTMENT AND BATTERY MODULE FOR A MOTOR VEHICLE simplified abstract (AUDI AG)

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CELL SEPARATION ELEMENT WITH SWELLING ADJUSTMENT AND BATTERY MODULE FOR A MOTOR VEHICLE

Organization Name

AUDI AG

Inventor(s)

Uwe Gerlinger of Kipfenberg (DE)

Carsten Lorenz of Reichertshofen (DE)

Eduard Main of Buxheim (DE)

CELL SEPARATION ELEMENT WITH SWELLING ADJUSTMENT AND BATTERY MODULE FOR A MOTOR VEHICLE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18599365 titled 'CELL SEPARATION ELEMENT WITH SWELLING ADJUSTMENT AND BATTERY MODULE FOR A MOTOR VEHICLE

Simplified Explanation: The patent application describes a cell separation element that can be compressed elastically between two battery cells. It has a corrugated structural wall that provides restoring force when compressed.

Key Features and Innovation:

  • Cell separation element for placement between battery cells
  • Elastically compressible in a first direction
  • Features a corrugated structural wall for restoring force
  • Designed to maintain separation between battery cells

Potential Applications: The technology could be used in various battery systems, electric vehicles, portable electronics, and energy storage applications.

Problems Solved:

  • Prevents direct contact between battery cells
  • Ensures proper spacing and alignment
  • Provides stability and safety in battery systems

Benefits:

  • Enhanced safety in battery systems
  • Improved efficiency and performance
  • Longer lifespan of battery cells

Commercial Applications: The technology could be valuable in the automotive industry for electric vehicles, consumer electronics, renewable energy storage systems, and other applications requiring battery technology advancements.

Prior Art: Prior art related to this technology may include patents or research on battery cell separators, elastic compression elements, and structural components in battery systems.

Frequently Updated Research: Researchers may be exploring advancements in material science for more efficient and durable cell separation elements, as well as innovations in battery technology for improved performance and safety.

Questions about Cell Separation Elements: 1. How does the corrugated structural wall of the cell separation element contribute to its compressibility and restoring force? 2. What are the potential challenges in implementing this technology in different types of battery systems?


Original Abstract Submitted

A cell separation element for arrangement in an intermediate space between two battery cells. The cell separation element is designed to be at least partially elastically compressible with respect to a first direction. The cell separation element has a first corrugated structural wall with a corrugated structure. When the cell separation element is arranged as intended in the intermediate space, a first side surface of the corrugated structural wall faces a first of the two battery cells and a second side surface of the corrugated structural wall faces a second of the two battery cells. The structural wall is designed to provide a restoring force when the cell separation element is compressed with respect to the first direction.